US7052598B2

Process for the production of gasoline with a low sulfur content comprising a hydrogenation, a fractionation, a stage for transformation of sulfur-containing compounds and a desulfurization

Summary by NHIP

Low sulfur gasoline production

The process produces low sulfur gasoline via selective diolefin hydrogenation, sulfur compound transformation, fractionation, and targeted desulfurization. Distinctive steps include simultaneous hydrogenation and transformation in one reactor, molecular weight increase of sulfur compounds, and recycling light fraction effluents with heavy fractions before final desulfurization.

Claim Score by NHIP

Read claim 15, the broadest

Abstract

A process for the production of gasoline with a low sulfur content that comprises at least one selective hydrogenation of diolefins, optionally at least one stage for transformation, preferably to increase their weight, for light sulfur-containing compounds that are present in the gasoline, at least one fractionation of the gasoline that is obtained into at least two fractions: light gasoline and heavy gasoline, then optionally a stage for transformation, preferably for alkylation or adsorption, of sulfur-containing compounds and a desulfurization treatment in a stage of at least a portion of the heavy fraction.

US7052598B2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 24 February 2023, 3.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

18 claims: 2 independent, 16 dependent

  1. 1
    A process for the production of gasoline with a low sulfur content, comprising at least (a) at least one selective hydrogenation of diolefins that are present in starting gasoline (b), at least one transformation of light sulfur-containing compounds that are present in the starting gasoline,(c), at least one fractionation of gasoline that is obtained in (a) or (b) into at least two fractions:a light fraction and a heavy fraction, (d) at least one transformation of sulfur-containing compounds that are selected from the group consisting of thiophene, thiophenic compounds and mercaptans that are present in the light fraction and/or in at least one intermediate fraction, wherein the effluent of (d) is (i) mixed at least in part with a heavy fraction that is obtained from the fractionation in (c);(ii) sent into a new fractionation unit to be separated into two fractions: an intermediate fraction that is not treated or optionally desulfurized without being mixed, and a heavy fraction that is optionally mixed with the heavy fraction that is obtained from (c) before being desulfurized in stage (f);or (iii) returned to fractionation (c);(e) optionally desulfurizing at least a portion at least one intermediate fraction obtained from (c) or (d), (f), a one stage desulfurization treatment of at least a portion of the heavy fraction that is obtained from fractionation in (c) stage c.
  2. 15
    Broadest claimClaim Score 45, average(NHIP)A process for the production of gasoline with a low sulfur content, comprising at least (a):at least one selective hydrogenation of diolefins that are present in starting gasoline, (c), at least one fractionation of gasoline that is obtained in (a) into at least two fractions: a light fraction and a heavy fraction, (d) transformation of sulfur-containing compounds that are selected from the group consisting of the thiophene, thiophenic compounds and mercaptans, that are present in at least one fraction that is obtained in (c), wherein the effluent of (d) is (i) mixed at least in part with a heavy fraction that is obtained from the fractionation in (c);(ii) sent into a new fractionation unit to be separated into two fractions: an intermediate fraction that is not treated or optionally desulfurized without being mixed, and a heavy fraction that is optionally mixed with the heavy fraction that is obtained from (c) before being desulfurized in stage (f);or (iii) returned to fractionation (c), (f) a one stage desulfurization treatment of at least a portion of the heavy fraction that is obtained from the fractionation in (c).